A simplified electro-chemical lithium-ion battery model applicable for in situ monitoring and online control

Author:

Gu Yuxuan,Wang Jianxiao,Chen Yuanbo,Xiao Wei,Deng ZhongweiORCID,Chen QixinORCID

Publisher

Elsevier BV

Subject

General Energy,Pollution,Mechanical Engineering,Building and Construction,Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Civil and Structural Engineering

Reference63 articles.

1. Co-estimation of state of charge and state of health for lithium-ion batteries based on fractional-order calculus;Hu;IEEE Trans Veh Technol,2018

2. Battery state of health estimation based on incremental capacity analysis method: Synthesizing from cell-level test to real-world application;She;IEEE J Emerg Sel Top Power Electron,2021

3. Heuristic battery-protective strategy for energy management of an interactive renewables–buildings–vehicles energy sharing network with high energy flexibility;Zhou;Energy Convers Manage,2020

4. A regression learner-based approach for battery cycling ageing predictionadvances in energy management strategy and techno-economic analysis;Zhou;Energy,2022

5. A continuum of physics-based lithium-ion battery models reviewed;Planella;Prog Energy,2022

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